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961.
Miyake H Komura M Itoh S Kosugi M Kashino Y Satoh K Shibata Y 《Photosynthesis research》2011,110(1):39-48
A time-resolved fluorescence study of living lichen thalli at 5 K was conducted to clarify the dynamics and mechanism of the
effective dissipation of excess light energy taking place in lichen under extreme drought conditions. The decay-associated
spectra obtained from the experiment at 5 K were characterized by a drastically sharpened spectral band which could not be
resolved by experiments at higher temperatures. The present results indicated the existence of two distinct dissipation components
of excess light energy in desiccated lichen; one is characterized as rapid fluorescence decay with a time constant of 27 ps
in the far-red region that was absent in wet lichen thalli, and the other is recognized as accelerated fluorescence decay
in the 685–700 nm spectral region. The former energy-dissipation component with extremely high quenching efficiency is most
probably ascribed to the emergence of a rapid quenching state in the peripheral-antenna system of photosystem II (PS II) on
desiccation. This is an extremely effective protection mechanism of PS II under desiccation, which lichens have developed
to survive in the severely desiccated environments. The latter, which is less efficient at 5 K, might have a supplementary
role and take place either in the core antenna of PS II or aggregated peripheral antenna of PS II. 相似文献
962.
963.
964.
The Toll-like receptor (TLR) 4/MD-2 heterodimer senses lipopolysaccharide (LPS). RP105 (radioprotective 105 kDa), a TLR-related molecule, is similar to TLR4 in that the extracellular leucine-rich repeats associate with MD-1, the MD-2-like molecule. MD-2 has a unique hydrophobic cavity that directly binds to lipid A, the active center of LPS. LPS-bound MD-2 opens the secondary interface with TLR4, leading to dimerization of TLR4/MD-2. MD-1 also has a hydrophobic cavity that accommodates lipid IVa, a precursor of lipid A, suggesting a role for the RP105/MD-1 heterodimer in sensing LPS or related microbial products. Little is known, however, about the structure of the RP105/MD-1 heterodimer or its oligomer. Here, we have determined the crystal structures of mouse and human RP105/MD-1 complexes at 1.9 and 2.8 Å resolutions, respectively. Both mouse and human RP105/MD-1 exhibit dimerization of the 1:1 RP105/MD-1 complex, demonstrating a novel organization. The “m”-shaped 2:2 RP105/MD-1 complex exhibits an inverse arrangement, with N-termini interacting in the middle. Thus, the dimerization interface of RP105/MD-1 is located on the opposite side of the complex, compared to the 2:2 TLR4/MD-2 complex. These results demonstrate that the 2:2 RP105/MD-1 complex is distinct from previously reported TLR dimers, including TLR4/MD-2, TLR1/TLR2, TLR2/TLR6, and TLR3, all of which facilitate homotypic or heterotypic interaction of the C-terminal cytoplasmic signaling domain. 相似文献
965.
Hattori H Okuda K Murase T Shigetsura Y Narise K Semenza GL Nagasawa H 《Bioorganic & medicinal chemistry》2011,19(18):5392-5401
The tumor microenvironment is characterized by hypoxia, low-nutrient levels, and acidosis. A natural product chemistry-based approach was used to discover small molecules that modulate adaptive responses to a hypoxic microenvironment through the hypoxia-inducible factor (HIF)-1 signaling pathways. Five compounds, such as baccharin (3), beturetol (4), kaempferide (5), isosakuranetin (6), and drupanin (9), that modulate HIF-1-dependent luciferase activity were identified from Brazilian green propolis using reporter assay. Compounds 3, 9 and 5 reduced HIF-1-dependent luciferase activity. The cinnamic acid derivatives 3 and 9 significantly inhibited expression of the HIF-1α protein and HIF-1 downstream target genes such as glucose transporter 1, hexokinase 2, and vascular endothelial growth factor A. They also exhibited significant anti-angiogenic effects in the chick chorioallantoic membrane (CAM) assay at doses of 300 ng/CAM. On the other hand, flavonoids 4 and 6 induced HIF-1-dependent luciferase activity and expression of HIF-1 target genes under hypoxia. The contents (g/100g extract) of the HIF-1-modulating compounds in whole propolis ethanol extracts were also determined based on liquid chromatography-electrospray ionization mass spectrometry as 1.6 (3), 14.2 (4), 4.0 (5), 0.7 (6), and 0.7 (9), respectively. These small molecules screened from Brazilian green propolis may be useful as lead compounds for the development of novel therapies against ischemic cardiovascular disease and cancer based on their ability to induce or inhibit HIF-1 activity, respectively. 相似文献
966.
Kurata H Kusumi K Otsuki K Suzuki R Kurono M Takada Y Shioya H Komiya T Mizuno H Ono T Hagiya H Minami M Nakade S Habashita H 《Bioorganic & medicinal chemistry letters》2011,21(13):3885-3889
Structure-activity relationship of sphingosine-1-phosphate receptor agonists was examined. Cinnamyl derivative 1 was modified to improve S1P1 agonistic activity as well as selectivity over S1P3 agonistic activity. Dihydronaphthalene derivative 10d was identified as a potent S1P1 receptor agonist with high selectivity against S1P3 and enhanced efficacy in lowering peripheral lymphocyte counts in mice. 相似文献
967.
Shimoke K Matsuki Y Fukunaga K Matsumura Y Fujita E Sugihara K Nobuhara M Maruoka H Ikeuchi T Kudo M 《Cellular and molecular neurobiology》2011,31(5):795-802
Following endoplasmic reticulum (ER) stress, cerebral infarctions have been reported to involve an apoptotic process, including
the activation of the caspase cascade. To confirm whether fragmented caspase-12, which is activated by cleavage and is detectable
during ER stress, is also involved in embolic cerebral infarctions in rats, we adopted an autologous blood clot model for
the analysis of cerebral infarctions. We performed experiments in rats with brain infarctions, which are closely related to
embolic cerebral infarctions. We utilized a homologous blood clot, i.e., natural materials, to form the infarct area. Our
findings reveal that caspase-12 is fragmented when infarct areas form in cerebral cortical neurons. Interestingly, we observed
that these fragments translocated to the nuclei of not only cerebral cortical neurons but hippocampal neurons. We further
found that glucose-regulated protein 78 (GRP78), a marker of ER stress, is up-regulated in both cerebral cortical and hippocampal
neurons during cerebral infarction. This result suggests that the fragmentation of caspase-12 and the subsequent nuclear translocation
of these fragments are involved in the brain infarction process in rats. 相似文献
968.
Moriguchi R Ohata K Kanahama K Takahashi H Nishiyama M Kanayama Y 《Journal of plant physiology》2011,168(16):1927-1933
Tomato (Solanum lycopersicum L.) plants were transformed with an antisense construct of a cDNA encoding tomato telomere-binding protein (LeTBP1) to describe the role of a telomere-binding protein at the whole plant level. Fruit size decreased corresponding to the degree of suppression of LeTBP1 expression. This inhibition of fruit development was likely due to a decrease in the number of seeds in the LeTBP1 antisense plants. Pollen fertility and pollen germination rate decreased in accordance with the degree of suppression of LeTBP1 expression. Ovule viability was also reduced in the LeTBP1 antisense plants. Although plant height was somewhat reduced in the antisense plants compared to the control plants, the number and weight of leaves were unaffected by LeTBP1 suppression. The number and morphology of flowers were also normal in the antisense plants. These indicate that reduced fertility in the antisense plants is not an indirect effect of altered vegetative growth. LeTBP1 expression was sensitive to temperature stress in wild-type plants. We conclude that LeTBP1 plays a critical role in seed and fruit development rather than vegetative growth and flower formation. 相似文献
969.
Ohto-Fujita E Konno T Shimizu M Ishihara K Sugitate T Miyake J Yoshimura K Taniwaki K Sakurai T Hasebe Y Atomi Y 《Cell and tissue research》2011,345(1):177-190
We have found that a water-soluble alkaline-digested form of eggshell membrane (ASESM) can provide an extracellular matrix (ECM) environment for human dermal fibroblast cells (HDF) in vitro. Avian eggshell membrane (ESM) has a fibrous-meshwork structure and has long been utilized as a Chinese medicine for recovery from burn injuries and wounds in Asian countries. Therefore, ESM is expected to provide an excellent natural material for biomedical use. However, such applications have been hampered by the insolubility of ESM proteins. We have used a recently developed artificial cell membrane biointerface, 2-methacryloyloxyethyl phosphorylcholine polymer (PMBN) to immobilize ASESM proteins. The surface shows a fibrous structure under the atomic force microscope, and adhesion of HDF to ASESM is ASESM-dose-dependent. Quantitative mRNA analysis has revealed that the expression of type III collagen, matrix metalloproteinase-2, and decorin mRNAs is more than two-fold higher when HDF come into contact with a lower dose ASESM proteins immobilized on PMBN surface. A particle-exclusion assay with fixed erythrocytes has visualized secreted water-binding molecules around the cells. Thus, HDF seems to possess an ECM environment on the newly designed PMBN-ASESM surface, and future applications of the ASESM-PMBN system for biomedical use should be of great interest. 相似文献
970.
Seto Y Hamada S Ito H Masuta C Matsui H Nabeta K Matsuura H 《Bioscience, biotechnology, and biochemistry》2011,75(12):2316-2320
Recently we reported that rice salicylic acid (SA) glucosyltransferase (OsSGT) is active toward 12-hydroxyjasmonic acid (tuberonic acid, TA) and that OsSGT gene expression is induced by wounding stress. Here we report that tobacco SA glucosyltransferase (NtSGT), which is thought to be an ortholog of OsSGT, is also active toward TA. Although NtSGT expression is known to be induced by biotrophic stress, it was also induced by wounding stress in the same manner as OsSGT. These results indicate that this glucosyltransferase is important not only in biotrophic stress but also for wounding stress. It was found that this enzyme is dually functional, with activity both toward TA and SA. 相似文献